School of Biomedical Sciences, University of Newcastle, Callaghan, New South Wales, Australia.
Reproduction. 2010 Oct;140(4):521-30. doi: 10.1530/REP-10-0223. Epub 2010 Jul 21.
Previous studies have established that when maturing mouse oocytes are continuously incubated with the Aurora inhibitor ZM447439, meiotic maturation is blocked. In this study, we observe that by altering the time of addition of the inhibitor, oocyte maturation can actually be accelerated by 1 h as measured by the timing of polar body extrusion. ZM447439 also had the ability to overcome a spindle assembly checkpoint (SAC) arrest caused by nocodazole and so rescue polar body extrusion. Consistent with the ability of the SAC to inhibit cyclin B1 degradation by blocking activation of the anaphase-promoting complex, we could also observe a rescue in cyclin B1 degradation when ZM447439 was added to nocodazole-treated oocytes. The acceleration of the first meiotic division by ZM447439, which has not been achieved previously, and its effects on the SAC are all consistent with the proposed mitotic role of Aurora B in activating the SAC. We hypothesize that Aurora kinase activity controls the SAC in meiosis I, despite differences to the mitotic cell cycle division in spindle architecture brought about by the meiotic mono-orientation of sister kinetochores.
先前的研究已经证实,当成熟的小鼠卵母细胞连续用 Aurora 抑制剂 ZM447439 孵育时,减数分裂成熟被阻断。在这项研究中,我们观察到,通过改变抑制剂添加的时间,实际上可以将卵母细胞成熟加速 1 小时,这可以通过极体挤出的时间来衡量。ZM447439 还具有克服由 nocodazole 引起的纺锤体组装检查点(SAC)阻滞的能力,从而挽救极体挤出。与 SAC 通过阻止后期促进复合物的激活来抑制细胞周期蛋白 B1 降解的能力一致,当 ZM447439 添加到 nocodazole 处理的卵母细胞中时,我们也可以观察到细胞周期蛋白 B1 降解的挽救。ZM447439 以前没有实现的第一次减数分裂的加速及其对 SAC 的影响都与 Aurora B 在激活 SAC 中的有丝分裂作用一致。我们假设 Aurora 激酶活性控制着减数分裂 I 中的 SAC,尽管由于姐妹动粒的减数分裂单定向引起的纺锤体结构的有丝分裂细胞周期分裂的差异。